Color-pure violet-light-emitting diodes based on layered lead halide perovskite nanoplates D Liang, Y Peng, Y Fu, MJ Shearer, J Zhang, J Zhai, Y Zhang, RJ Hamers, ... ACS nano 10 (7), 6897-6904, 2016 | 426 | 2016 |
Effect of synthetic accessibility on the commercial viability of organic photovoltaics TP Osedach, TL Andrew, V Bulović Energy & Environmental Science 6 (3), 711-718, 2013 | 342 | 2013 |
Confining light to deep subwavelength dimensions to enable optical nanopatterning TL Andrew, HY Tsai, R Menon Science 324 (5929), 917-921, 2009 | 288 | 2009 |
QLEDs for displays and solid-state lighting GJ Supran, Y Shirasaki, KW Song, JM Caruge, PT Kazlas, S Coe-Sullivan, ... MRS bulletin 38 (9), 703-711, 2013 | 254 | 2013 |
A fluorescence turn-on mechanism to detect high explosives RDX and PETN TL Andrew, TM Swager Journal of the American Chemical Society 129 (23), 7254-7255, 2007 | 243 | 2007 |
Improving the performance of P3HT–fullerene solar cells with side-chain-functionalized poly (thiophene) additives: a new paradigm for polymer design JM Lobez, TL Andrew, V Bulovic, TM Swager ACS nano 6 (4), 3044-3056, 2012 | 155 | 2012 |
Transforming commercial textiles and threads into sewable and weavable electric heaters L Zhang, M Baima, TL Andrew ACS applied materials & interfaces 9 (37), 32299-32307, 2017 | 151 | 2017 |
Wearable sensors for monitoring human motion: a review on mechanisms, materials, and challenges SZ Homayounfar, TL Andrew SLAS TECHNOLOGY: Translating Life Sciences Innovation 25 (1), 9-24, 2020 | 150 | 2020 |
Towards seamlessly-integrated textile electronics: methods to coat fabrics and fibers with conducting polymers for electronic applications L Allison, S Hoxie, TL Andrew Chemical Communications 53 (53), 7182-7193, 2017 | 141 | 2017 |
Development of lead iodide perovskite solar cells using three-dimensional titanium dioxide nanowire architectures Y Yu, J Li, D Geng, J Wang, L Zhang, TL Andrew, MS Arnold, X Wang Acs Nano 9 (1), 564-572, 2015 | 136 | 2015 |
Bias-stress effect in 1, 2-ethanedithiol-treated PbS quantum dot field-effect transistors TP Osedach, N Zhao, TL Andrew, PR Brown, DD Wanger, DB Strasfeld, ... Acs Nano 6 (4), 3121-3127, 2012 | 135 | 2012 |
A wearable all‐fabric thermoelectric generator LK Allison, TL Andrew Advanced Materials Technologies 4 (5), 1800615, 2019 | 123 | 2019 |
Structure—Property relationships for exciton transfer in conjugated polymers TL Andrew, TM Swager Journal of Polymer Science Part B: Polymer Physics 49 (7), 476-498, 2011 | 119 | 2011 |
Rugged textile electrodes for wearable devices obtained by vapor coating off‐the‐shelf, plain‐woven fabrics L Zhang, M Fairbanks, TL Andrew Advanced Functional Materials 27 (24), 1700415, 2017 | 103 | 2017 |
A strategy for accessing nanobody-based electrochemical sensors for analyte detection in complex media R Fan, Y Li, KW Park, J Du, LH Chang, ER Strieter, TL Andrew ECS Sensors Plus 1 (1), 010601, 2022 | 98 | 2022 |
All‐textile triboelectric generator compatible with traditional textile process L Zhang, Y Yu, GP Eyer, G Suo, LA Kozik, M Fairbanks, X Wang, ... Advanced Materials Technologies 1 (9), 1600147, 2016 | 92 | 2016 |
An air-stable low-bandgap n-type organic polymer semiconductor exhibiting selective solubility in perfluorinated solvents Y Takeda, TL Andrew, JM Lobez, AJ Mork, TM Swager John Wiley & Sons, Inc., 2012 | 91 | 2012 |
Detection of explosives via photolytic cleavage of nitroesters and nitramines TL Andrew, TM Swager The Journal of organic chemistry 76 (9), 2976-2993, 2011 | 83 | 2011 |
Melding vapor-phase organic chemistry and textile manufacturing to produce wearable electronics TL Andrew, L Zhang, N Cheng, M Baima, JJ Kim, L Allison, S Hoxie Accounts of Chemical Research 51 (4), 850-859, 2018 | 80 | 2018 |
Vapor-printed polymer electrodes for long-term, on-demand health monitoring JJ Kim, LK Allison, TL Andrew Science advances 5 (3), eaaw0463, 2019 | 79 | 2019 |